EP0677843A1 - Support d'enregistrement pouvant traiter differentes langues et appareil de reproduction - Google Patents

Support d'enregistrement pouvant traiter differentes langues et appareil de reproduction Download PDF

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Publication number
EP0677843A1
EP0677843A1 EP93923666A EP93923666A EP0677843A1 EP 0677843 A1 EP0677843 A1 EP 0677843A1 EP 93923666 A EP93923666 A EP 93923666A EP 93923666 A EP93923666 A EP 93923666A EP 0677843 A1 EP0677843 A1 EP 0677843A1
Authority
EP
European Patent Office
Prior art keywords
information
data
subtitle
audio
video
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP93923666A
Other languages
German (de)
English (en)
Other versions
EP0677843A4 (fr
EP0677843B1 (fr
Inventor
Koichi Hirayama
Masatoshi Nakai
Yuichi Miyano
Kenjiro Endoh
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toshiba Corp
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Toshiba Corp
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Filing date
Publication date
Application filed by Toshiba Corp filed Critical Toshiba Corp
Priority to EP97120978A priority Critical patent/EP0836190B1/fr
Publication of EP0677843A1 publication Critical patent/EP0677843A1/fr
Publication of EP0677843A4 publication Critical patent/EP0677843A4/fr
Application granted granted Critical
Publication of EP0677843B1 publication Critical patent/EP0677843B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
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    • H04N5/9201Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving the multiplexing of an additional signal and the video signal
    • H04N5/9206Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving the multiplexing of an additional signal and the video signal the additional signal being a character code signal
    • H04N5/9208Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving the multiplexing of an additional signal and the video signal the additional signal being a character code signal involving the use of subcodes
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    • H04N9/80Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback
    • H04N9/804Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving pulse code modulation of the colour picture signal components
    • H04N9/8042Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving pulse code modulation of the colour picture signal components involving data reduction
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    • H04N9/806Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving pulse code modulation of the colour picture signal components with processing of the sound signal
    • H04N9/8063Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback involving pulse code modulation of the colour picture signal components with processing of the sound signal using time division multiplex of the PCM audio and PCM video signals
    • HELECTRICITY
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    • H04N9/80Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback
    • H04N9/82Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback the individual colour picture signal components being recorded simultaneously only
    • H04N9/8205Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback the individual colour picture signal components being recorded simultaneously only involving the multiplexing of an additional signal and the colour video signal
    • H04N9/8227Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback the individual colour picture signal components being recorded simultaneously only involving the multiplexing of an additional signal and the colour video signal the additional signal being at least another television signal
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    • H04N9/8233Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback the individual colour picture signal components being recorded simultaneously only involving the multiplexing of an additional signal and the colour video signal the additional signal being a character code signal
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    • H04N9/8244Transformation of the television signal for recording, e.g. modulation, frequency changing; Inverse transformation for playback the individual colour picture signal components being recorded simultaneously only involving the multiplexing of an additional signal and the colour video signal the additional signal being a character code signal involving the use of subcodes

Definitions

  • This invention relates to a multilingual recording medium and a reproduction apparatus, which can record information such as movie programs, Kara-OK programs, educational programs, and learning programs on a medium such as an optical disk, along with comments, subtitles, speeches and the like in various languages, such that any speech or subtitle (character data) is reproduced in the language selected.
  • Bilingual TV broadcasting systems have been developed, in which the user can select the desired language at his or her TV set.
  • the user can select either of the two languages but cannot select any other language.
  • a disk on which various types of information in different languages are recorded as mentioned above can be prepared. Then, the reproduction apparatus can select and decode speech and subtitles (letters or characters) in a given language. This makes it possible to standardize the manufacture of disks and reproduction equipment and consequently will make a great contribution to reducing production costs.
  • a recording medium such as an optical disk (hereinafter referred to as "disk”) of the present invention 100 is installed in a recording and reproduction apparatus (accessing apparatus).
  • the disk 100 is placed on a turntable 101, which is rotated by a motor 102.
  • pickup means 103 reads the information recorded on the disk 100.
  • a pickup driving section 104 controls the movement of the pickup means 103, thereby achieving tracking control.
  • the output of the pickup means 103 is supplied to a modulation/demodulation section 201, which demodulates the supplied signal.
  • the demodulated data is supplied to an error correction data processing section 202.
  • the section 202 corrects errors and supplies the resulting signal to a data string processing section 203.
  • the section 203 extracts video information, subtitle and character information, and audio information.
  • the subtitle and character information and audio information are recorded and related to the video information, as will be explained later.
  • One of various languages can be selected for the subtitle and character information and audio information. The selection is made under the control of a system control section 204.
  • a user operates an operator panel 204, inputting data to the system control section 204.
  • the video information is separated at the data string processing section 203 and supplied to a video processing section 206.
  • the section 206 decodes the video information in accordance with the type of the display unit used. For example, the video information is converted into a suitable form for an NTSC, PAL, SECAM, or wide screen.
  • the video signal decoded at the video processing section 206 is supplied to an adder 207.
  • the adder 207 adds it with the subtitle and character information and supplies the addition result at an output terminal 209.
  • the audio information separated at the data string processing section 203 is supplied to an audio processing section 211.
  • the section 211 demodulates the audio information, producing a demodulated signal.
  • the signal is output from an output terminal 212.
  • the audio processing section has contains an audio processing section 213 in addition to the audio processing section 211. It can also reproduce speech in another language and supply the result at an output terminal 214 (this function will be described later).
  • the apparatus can also record data.
  • the video recording signal is supplied to an input terminal 301, and the audio recording signal is supplied to an input terminal 302.
  • the video processing section 206 acts as a video encoder, while the audio processing section 211 serves as an audio encoder.
  • the data string processing section 203 functions as a formatter for recording information.
  • the error correction data processing section 202 acts as an error code adding section.
  • the data processed is modulated at the modulation section 201 of the modulation and demodulation section 201, and the modulated signal is sent as recording information to the pickup section 103.
  • language information on various languages As will be described later, language information on various languages, audio information including music information and background music information, and subtitle information in various languages are recorded on the disk 100 used in the invention and related to the video information.
  • the audio data string processing section 203, system control section 204, and operator section 205 constitute data string control means. This control means determines which language information should be reproduced.
  • the disk used in the invention, its recording format, and its application will be outlines.
  • a movie may be recorded on a disk associated with the present invention.
  • pieces of language information are recorded on the disk, as well, which are related to the movie.
  • Subtitle information in a plurality of languages is also recorded so as to correspond to the movie.
  • Kara-OK music, a background image, and corresponding words information in a plurality of languages are recorded on the disk.
  • FIG. 2A shows an example of a disk 1 on which a movie is recorded.
  • data string #0 When data string #0 is selected in a reproduction operation, the image is reproduced and the environmental sound and music (B & M) are reproduced at the same time. In this case, there is no speech, and one of data strings #2 to #7 is selected. In data strings #2 to #7, speeches D2 to D7 in different languages are recorded. This enables the user to see the image, hear the environmental sound, and listen to the music and the speech in a given language.
  • "D1 + B & M" in data string #1 means that selecting this data string causes the image, the environmental sound and music, and the speech in the language specified by D1 to be reproduced.
  • FIG. 2B shows an example of a disk on which Kara-OK is recorded.
  • Kara-OK recorded accompaniment
  • one of data strings #1 to #7 is further selected in this reproduction state, speech in a different language is reproduced.
  • the words may some times differ from language to language.
  • the subtitles are also reproduced to the words and made to appear on a display unit. After having learned the melody by heart, the user can enjoy singing a song with only the subtitle displayed in the desired language, muting the words by operating the reproduction apparatus.
  • FIG. 2C shows another example of a disk on which Kara-OK is recorded.
  • Kara-OK recorded accompaniment
  • data string #1 is selected and reproduced in this reproduction state, a guide vocal is reproduced.
  • Reproducing only data string #2 allows the user to listen to the melody line only (this may be combined with the reproduction of data string).
  • data string #3 may be reproduced.
  • male voice is reproduced in, for example, stereo channel L
  • female voice is reproduced in, for example, stereo channel R. This enables the users to enjoy performing a duet, by turning either channel output of data string #3.
  • FIG. 2E shows an example of a disk on which full orchestral music is recorded.
  • data string #1 the sound of instrument 1 is inverted in phase and recorded.
  • data string #0 and data string #1 are reproduced, all orchestral music, but the sound of instrument 1 (for example, the piano), is output. This allows the user to practice the piano to orchestral accompaniment.
  • the sound of a single instrument is inverted in phase and recorded. Reproducing each data string enables the sound of the instrument for the corresponding data string to be erased.
  • FIG. 3A shows the information area on the optical disk 10.
  • a management area is formed on the center part of the optical disk 10, and a data area is formed, surrounding the management area.
  • management data for managing the data in the data area is recorded as will explained later.
  • information including subcode information, subpicture information, audio information, and video information is recorded.
  • FIG. 3B is an enlarged view of the contents of data unit DUT #0 in the data area.
  • a subcode (SUB-CODE) at the start a subpicture (SUB-PICTURE), audio information (AUDIO), video information (VIDEO) are recorded in the order mentioned.
  • the subcode (SUB-CODE) contains the attributes of data unit DUT #0 and control information on the data unit.
  • the subpicture (SUB-PICTURE) contains, for example, subtitle information (for movie video) or character information (for Kara-OK video and educational video). The subtitle information and the character information are each given PICTURE #0 to #7. All PICTURES #0 TO #7 differ from each other in language.
  • the audio (AUDIO) information is recorded in up to eight different languages AUDIO #0 to #7 (each reproduction corresponds to approximately one second). Each piece of audio information is recorded in frames, and each of frames #0, #1, ... is composed of headers (HEADER) and data (DATA).
  • the video information (VIDEO) contains 30 frames of images (approximately one second of reproduction), for example.
  • the video (VIDEO) formation is recorded by high-efficient coding image compression techniques. The number of frames is not by standardized.
  • the audio information is also subjected to high-efficient coding image compression.
  • At least two decoders for speech reproduction are built in the reproduction apparatus because different languages are recorded on the optical disk, and any one of them can be combined with the apparatus in operation.
  • the management information recorded in the management area will now be explained.
  • the management information is stored in the form of a table.
  • World language codes are defined as shown in FIG. 4A. Specifically, to show what languages are recorded in the data area, a table is constructed so that language codes may correspond to description codes 0, 1, ..., 8. In this example of a disk, language codes correspond to description codes. More precisely, description code 0 corresponds to non-language, or environmental sound and music (B & M); and description codes 1, 2, 3 and 4 correspond to English, Japanese, French, and German, respectively. By reading the VID, the user can understand the description-language correspondence.
  • the user may operate the operator section, thereby inputting the key information on any one of data string numbers #0 to #7 (user acknowledge key information display signal).
  • description code 1 appears as shown in FIG. 4B.
  • D1 i.e., English
  • D2 Japanese
  • Japanese Japanese
  • a comment made in the language by the producer is displayed.
  • the data address at which the comment information is recorded is put in the VID table, for example.
  • the comment information is displayed in the user acknowledge language.
  • the display appears in the language selected by the user at the first menu screen.
  • the comments appear in Japanese.
  • the comments include the producer's greeting, the date of production, the reason for having made the product, and the program time in the case of movies. for example.
  • the user can select an output mode for speech and subtitles. For example, the user can push a speech and subtitle change button at the operator panel.
  • information on various elements of each program is recorded. For example, 16 bytes are used for each program.
  • the information on various elements includes the start and end time of the program, whether the program is for home video, movie, Kara-OK, computer graphics, interactive use, gate, game, or computer data, the identification of a speech encoding system, the identification of an image encoding system, and the picture attributes, that is, information for identifying the aspect ratio and a system such as the PAL or the NTSC system, and information on horizontal resolution and vertical resolution. It also include a start pointer, in which a pointer value indicating the DAT address (data unit number) in which the data unit at the program starting point is stored is recorded.
  • the zone number (NZON) on the disk there are such parameters as the zone number (NZON) on the disk, the sector number (NSTC), the track number (NTRC), the program time (PTMB), and the link pointer (PNTL).
  • the NZON is the zone number to which the recording sector at the start of the data unit belongs.
  • the disk is divided in units of tracks, along the radius from the innermost track.
  • the zone numbers are allocated in sequence, beginning with 0 at the innermost zone.
  • a zone consists of many tracks and is given a track number.
  • the NSTC is a sector number in the track.
  • the system control section 204 causes the pickup driving section 104 to move the pickup 103 so as to read the desired program.
  • sequence is not limited to this format. In the embodiment of FIG. 3B, this order is effective in the case where data processing has to be effected with small hardware.
  • the above arrangement is also effective in highspeed reproduction.
  • the audio (AUDIO) information is read first and recorded in a memory. Then, the video (VIDEO) is read at intervals and decoded.
  • the audio (AUDIO) information is thinned out according to the rate at which the video (VIDEO) frames have been thinned out. For such a process it is convenient to take in the audio (AUDIO) information in advance and decode it.
  • FIG. 7 is a system control flowchart explaining how the system control section 204 operates when the user installs a disk 100 in the apparatus.
  • the VID and PIF in the management area in the disk are read automatically and stored as a table into work memory incorporated in the system control section 204 (FIGS. 4A and 4B). It is determined what type (movie or Kara-OK) of disk has just been installed (Steps S1 to S3). Then, the first menu screen (FIG. 5A) is displayed (Step S4). Next, it is determined which world language is selected by the user (Step S5). After the user has entered a select input, the second menu screen (FIG. 5B) is displayed (Step S6).
  • Comments are displayed on the second menu screen.
  • the user is asked which language he wishes to selects for speech and subtitles.
  • the comments are made in the world language selected.
  • the user can set a language for speech and that for subtitles as he wants to (Step S7).
  • English can be for subtitles and Japanese for speech, or vice versa. Further, other languages may be combined. This determines the data strings for the reproduced sound.
  • a movie is recorded in a single disk.
  • the first menu screen as shown in FIG. 8A appears (this screen is the same as that in FIG. 5A).
  • program 1 and program 2 are displayed along with still pictures of typical scenes, as shown in FIG. 8B.
  • the user operates a program select button to move the cursor to program 1 or program 2. If the cursor is on the desired program when the program select button is left untouched, the program will be selected upon lapse of a certain time. Once the program is so selected, the comments on the selected program appear as shown in FIG. 5B. From this time onwards, the selection of speech and subtitles is made as explained in FIGS. 5B and 7.
  • FIG. 9 shows an example which can memorize the history of language select information.
  • the management data on the disk is read and stored in the management data memory 304, as has been explained earlier.
  • the data on the first menu screen is also read and rendered corresponding to the data string numbers.
  • the menu screen is displayed as shown in FIG. 5, for example.
  • the menu screen data is read from the memory 403 and sent to the video processing section 206 via the video buffer 503. Looking at the menu screen, the user selects a language.
  • the select information is read via the input/output buffer 405 and decoded by the microprocessor 401. If the language selected is Japanese, the data address, at which the data on the second menu screen corresponding to Japanese is recorded, is determined by the table stored in the management data memory 402.
  • the pickup driving section 104 is controlled via the output buffer 406 so as to read the second menu screen (including the comments).
  • the data on the second menu screen has been fetched and stored in the memory 403.
  • the same data is output via the video output buffer 503.
  • the user enters the select information. That is, for a movie, information for selecting a language for subtitles, a language for speech, etc. is entered.
  • select information pieces are stored in the form of a table, in the history data memory 404.
  • the frequency at which an initial language is selected on the first menu screen, the frequency at which a language for speech is selected on the second menu screen, and the frequency at which a language for subtitles is selected are stored.
  • the frequency information pieces can be used after the user has made, for example, 10 to 20 selections.
  • FIG. 10A shows an example of a table stored in the history data memory 404.
  • the number of times Japanese is selected is the greatest in the first menu screen, and the number of times English is selected for speech and Japanese for subtitles is the greatest in the second menu screen.
  • the microprocessor 401 determines if there is any frequency data item larger than a specified value, when the disk is installed. If a frequency data item larger than the specified value is present, a data string is automatically identified by using the select information corresponding to the frequency data item larger than the specified value --without waiting for the user to enter an input. That is, control skips Steps S5 and S7. In this case, if the user wants to make a change, he may carry out a change operation in Step 10 in FIG. 7.
  • FIG. 10B shows another example of the processing routine of FIG. 7.
  • control proceeds to Step S11, thereby reading the history data. Then, it is determined whether or not the select information on the initial language contains any information item greater than a specified value (Step S12). If such an information item is not found, the control goes to Step S4 in FIG. 7, and if an information item larger than the specified value is present, a corresponding language mode is set (Step S14). Next, it is judged whether or not the language select information for speech contains any information item larger than a specified value (Step S14). If such an information item is found, a mode for a corresponding language for speech is set. Then, it is determined whether or not the subtitle language select information contains any information item greater than a specified value. If such an information item is present, the control goes to Step S8 in FIG. 7. Otherwise, the control proceeds to Step S6, in which the second menu screen appears.
  • a menu screen appears and the information on the menu screen is recorded on a disk.
  • a language selection manual comes with a disk or a reproduction apparatus. If so, the reproduction apparatus itself may contain a language select and select state display function.
  • FIG. 11 shows an example of a reproduction apparatus 600 provided with a display section 601 such as a liquid-crystal display.
  • Numeral 602 indicates a select button and 603 indicates a select setting button.
  • a representation for a first initial language select appears as shown in FIG. 5A.
  • characters #0 to #7 change one after another.
  • the select setting button 603 When the number corresponding to the desired language appears, the user presses the select setting button 603, thereby setting the language mode. In this state, comments may appear on the screen as shown in FIGS. 5 and 8.
  • the select setting button 603 is pressed, the world language mode is determined as shown in FIG. 11B.
  • the example in FIG. 11B shows a state where #2 is determined.
  • the speech language select mode is activated. Each time the user presses the select button 602, characters #0 to #7 change one after another. When the number corresponding to the desired language appears, the user presses the select setting button 603, setting the speech language mode.
  • FIG. 11C shows a state where #0 is determined for a speech language. Thereafter, a subtitle language is also selected in a similar manner. When speech is not required or when subtitles are not necessary, the user pushes a pass button 604.
  • buttons 602, 603, and 604 and the display section are provided on the reproduction apparatus 600. Instead, they may be provided on a remote control section. While in the above reproduction apparatus, the user can make a language selection whenever he wants to, a language initially set may always be selected by providing a language-fixing button provided on the back of the reproduction apparatus. By providing such a language-fixing function, unauthorized operations can be prevented when the apparatus is used in a place where various people are gathering for business, for example.
  • FIG. 12A shows an example of the first menu screen.
  • selecting #3 enables selection of music only, for example.
  • a title select screen appears in the second menu screen (FIG. 12B). Looking at the title select screen, the user selects the title of the desired musical composition. Then, the background image and words are displayed and the performance mode is activated.
  • the language for subtitles is automatically set in the world language selected.
  • FIG. 13 shows the data processing scheme in which the reproduction apparatus reproduces a Kara-OK program.
  • a disk When a disk is inserted in the reproduction apparatus, its type is identified from the contents of the management information (VID) (Steps S21 to S23). Then, the first menu screen is displayed (FIG. 12A).
  • a select code for the subtitle language corresponding to the language is created.
  • the codes for subtitle languages corresponding to world language codes are stored in table form in the PIF.
  • Step S24 the code for the corresponding subtitle language is searched for and stored temporality according to the code of the selected world language.
  • Step S5 many titles are displayed.
  • the data on titles may be stored in images in the data area or may be stored in the VID area.
  • the user can selects titles and enter the number of the desired title from the keyboard. After the title has been selected, the reproduction apparatus moves the pickup to the address at which the specified title is recorded, thereby staring a reproducing operation. To select the subtitle information, the subtitle information corresponding to the select code decoded in Step S24 is reproduced (Steps S25 and S26).
  • a title is selected on the second menu screen. This inevitably makes a second user to waste time before selecting a title. To prevent such waste of time, a title can be selected by interruption in the Kara-OK mode. In this case, a second user can look at a title-select number correspondence table (which comes with the purchased disk) and make reservations one after another.
  • Step S31 it is determined by interruption whether or not a reservation operation has been made. If a reservation operation has been effected, the number of the title and the select information on the subtitle language are read as reservation information. When the select information on the subtitle language has not entered, what the subtitle language the first user has selected is used as a selected subtitle language (Steps S41 and S42). After the data on the reservation number of the title has been entered, the apparatus determines whether or not the current disk contains the reserved title (Step S43). If the reserved title is present, a dot is added to the display section of a remote control or to the dot array of the video screen and the result is stored in a reservation memory (Steps S44 and S45). This enables the user to understand the reservation state. When there are many dots indicating reservations, a cancel key may be provided and operated to cancel reservations.
  • FIG. 14B is a flowchart explaining the processing performed after Step S26 in FIG. 3 in the reproduction apparatus with a reservation function.
  • a subsequent title is selected (when a reservation information item is stored) after the reproduction has been completed, the subsequent title and its number are displayed on the screen.
  • the subsequent title and its number are stored in the reservation memory incorporated in the apparatus (Steps S27 and S28). If the subsequent reservation information item does not exist in the work memory, the control returns to Step S25 and the second menu screen appears to provide a list of titles. If the reservation information item is present, the subsequent title (title number, title, etc.) is displayed and a start operation is waited for (Steps S29 and S30). When a start operation is performed, the Kara-OK for the title and the subtitles are reproduced (Steps S30 and S31).
  • FIG. 15 shows an example of the menu screen displayed when a training Kara-OK disk (FIGS. 2C, 2D, and 2E) is reproduced.
  • a select menu of world languages appears on the first menu screen in FIG. 15A.
  • the titles in the selected world language and corresponding numbers are displayed on the second menu screen (FIG. 15B).
  • a third menu screen appears as shown in FIG. 15C.
  • the third menu screen enables the user to make a selection according to the type of practice. For example, if the user wants to sing a song to normal accompaniment, he needs only to push first the #0 key and then the setting button. If he wants to reproduce a guide vocal only, it sufficient for him to push first the #1 key and then the setting button. If he wishes to listen to Kara-OK and a melody line, he only has to press the #0 and #2 keys and then the setting button. While the disk is being reproduced, the above reservation function may be activated.
  • FIG. 17 shows the relationship between the system control section 204 and the audio processing sections 211 and 212.
  • the L channel and R channel audio signals reproduced by a decoder 701 of the audio processing section 211 are input to adders 702 and 703, respectively.
  • the outputs of the adders 702 and 703 are supplied to digital-to-analog converters 721 and 722, which convert the outputs into analog signals.
  • the L channel and R channel audio signals reproduced at a decoder 711 of the audio processing section 212 are supplied to switches 712 and 713 and to digital-to-analog converters 723 and 724 via switches 714 and 715.
  • the converters 723 and 724 convert the supplied signals into analog signals.
  • the outputs of the switches 712 and 713 are supplied to the adders 702 and 703.
  • the recording mode and display mode of the world language and the recording mode and select display mode of the audio signal for the first menu screen are not limited to those described in the above embodiments. Other modes may be used for the first menu screen.
  • the selected information items appearing on the menu screens are, of course, recorded as management data in the management area on the disk.
  • a world map may be displayed on which the national flags, marks, or numbers are put at the places where the languages recorded on the disk are used, and the desired language may be selected by moving the cursor to the desired flag, mark, or number or by operating the keyboard to enter the corresponding symbol.
  • FIG. 18A shows an example of management information having speech data strings one of which contains the subspeech explaining the contents of the image.
  • the subspeech is a speech explaining the state of the image so that people with poor eyesight can understand easily.
  • the environmental sound corresponding to the image is recorded in data string #0
  • the environmental sound and a first world language (D1) are recorded in data string for subtitles, a language for speech, etc. is entered.
  • select information pieces are stored in the form of a table, in the history data memory 404.
  • the frequency at which an initial language is selected on the first menu screen, the frequency at which a language for speech is selected on the second menu screen, and the frequency at which a language for subtitles is selected are stored.
  • the frequency information pieces can be used after the user has made, for example, 10 to 20 selections.
  • FIG. 10A shows an example of a table stored in the history data memory 404.
  • the number of times Japanese is selected is the greatest in the first menu screen, and the number of times English is selected for speech and Japanese for subtitles is the greatest in the second menu screen.
  • the microprocessor 401 determines if there is any frequency data item larger than a specified value, when the disk is installed. If a frequency data item larger than the specified value is present, a data string is automatically identified by using the select information corresponding to the frequency data item larger than the specified value --without waiting for the user to enter an input. That is, control skips Steps S5 and S7. In this case, if the user wants to make a change, he may carry out a change operation in Step 10 in FIG. 7.
EP93923666A 1993-10-29 1993-10-29 Support d'enregistrement pouvant traiter differentes langues et appareil de reproduction Expired - Lifetime EP0677843B1 (fr)

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EP (2) EP0836190B1 (fr)
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Also Published As

Publication number Publication date
EP0677843A4 (fr) 1996-05-29
EP0836190A2 (fr) 1998-04-15
HK1010464A1 (en) 1999-06-17
EP0677843B1 (fr) 1998-04-15
EP0836190A3 (fr) 1998-04-22
US5835670A (en) 1998-11-10
US5652824A (en) 1997-07-29
DE69318038T2 (de) 1998-10-29
EP0836190B1 (fr) 1999-08-11
WO1995012198A1 (fr) 1995-05-04
DE69318038D1 (de) 1998-05-20
KR960700510A (ko) 1996-01-20
KR100228028B1 (ko) 1999-11-01

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